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Hermann Haller

Publications and source records attributed to Hermann Haller.

At least 73 records · Page 4Linked to original sources

Proteomic analysis for the assessment of diabetic renal damage in humans.

Renal disease in patients with Type II diabetes is the leading cause of terminal renal failure and a major healthcare problem. Hence early identification of patients prone to develop this complication is important. Diabetic renal damage should be reflected by a change in urinary polypeptide excretion at a very early stage. To analyse these changes, we used an online combination of CE/MS (capillary electrophoresis coupled with MS), allowing fast and accurate evaluation of up to 2000 polypeptides in urine. Employing this technology, we have examined urine samples from 39 healthy individuals and from 112 patients with Type II diabetes mellitus and different degrees of albumin excretion rate. We established a 'normal' polypeptide pattern in the urine of healthy subjects. In patients with Type II diabetes and normal albumin excretion rate, the polypeptide pattern in urine differed significantly from normal, indicating a specific 'diabetic' pattern of polypeptide excretion. In patients with higher grade albuminuria, we were able to detect a polypeptide pattern indicative of 'diabetic renal damage'. We also found this pattern in 35% of those patients who had low-grade albuminuria and in 4% of patients with normal albumin excretion. Moreover, we could identify several of the indicative polypeptides using MS/MS sequencing. We conclude that proteomic analysis with CE/MS permits fast and accurate identification and differentiation of polypeptide patterns in urine. Longitudinal studies should explore the potential of this powerful diagnostic tool for early detection of diabetic renal damage.

Aged↗

Growth arrest specific protein 6/Axl signaling in human inflammatory renal diseases.

BACKGROUND: Growth arrest-specific gene 6 (Gas6) and its binding partner, the receptor tyrosine kinase Axl, are important mediators in experimental nephritis. The authors tested whether the Gas6/Axl signaling pathway participates in human renal diseases. METHODS: The authors compared 26 human renal specimens from patients with IgA nephritis, acute diffuse immune complex glomerulonephritis, acute lupus nephritis, antineutrophil cytoplasmic antibody--associated glomerulonephritis, acute transplant rejection, and normal renal tissue. Because reactive oxygen species are pivotal in inflammation, the authors tested whether the Axl/Gas6 expression is influenced by NADPH oxidase in vitro. RESULTS: Gas6 and Axl immunofluorescence was barely detectable in normal kidney. However, in disease Axl was copiously expressed in the small vessel media, glomeruli, distal tubules, and collecting ducts. Similarly, Gas6 was upregulated in the small vessel intima and media, all segments of the renal tubules, the brush border, and glomeruli. Gas6 and Axl upregulation was a prominent but nonspecific finding in these renal diseases. Cultured rat vascular smooth muscle cells and immortalized human mesangial cells were stimulated with angiotensin (Ang) II (1 x 10(-7) mol/L) for 6 or 18 hours. Confocal microscopy and Western blot showed Ang II-dependent Gas6 and Axl expression. An antisense probe against the p22 phox unit of NADPH-oxidase suppressed Ang II-induced Gas6 and Axl expression. In addition, in p47 phox knockout cells Ang II-induced Gas6 and Axl expression were blocked. CONCLUSION: GAS6/Axl signaling is involved in human renal disease. The Ang II-induced Gas6 and Axl expression may be dependent on NADPH-oxidase. Gas6 and Axl are important signaling molecules in human renal disease and may be potential therapeutic targets.

Adolescent↗

Efficacy and cardiovascular tolerability of extended dialysis in critically ill patients: a randomized controlled study.

BACKGROUND: Extended dialysis is an increasingly used modality of renal replacement therapy that theoretically offers advantages of both intermittent and continuous therapies in the intensive care unit (ICU). METHODS: We randomly treated 39 ventilated critically ill patients with oliguric acute renal failure with either continuous venovenous hemofiltration (CVVH; n = 19; age, 50.1 +/- 3.2 years; Acute Physiology and Chronic Health Assessment II [APACHE II] score, 32.3 +/- 1.2; 79% sepsis) and a substitution fluid rate of at least 30 mL/kg/h for 24 hours or with extended dialysis for 12 hours (n = 20; age, 50.8 +/- 3.6 years; APACHE II score, 33.6 +/- 1.0; 85% sepsis). The latter was performed using an easy-to-handle, single-pass, batch dialysis system. All hemodynamic parameters were monitored invasively by means of an indwelling arterial catheter. RESULTS: Average mean arterial blood pressure, heart rate, cardiac output, systemic vascular resistance, and catecholamine dose were not significantly different in both therapies. Urea reduction rate was similar with extended dialysis compared with CVVH therapy (53% +/- 2% versus 52% +/- 3%; P = not significant) despite an average rate of substitution fluid with the latter of 3.2 +/- 0.1 L/h. This was corroborated by the finding of similar amounts of urea eliminated in the collected spent total hemofiltration and dialysis fluid. Correction of acidosis was accomplished faster with extended dialysis than CVVH, and the amount of heparin used was significantly lower with extended dialysis (P < 0.01). CONCLUSION: Extended dialysis combines excellent detoxification with cardiovascular tolerability, even in severely ill patients in the ICU. The technically simple dialysis system used offers flexibility of treatment time.

APACHE↗

Cellular control of nitric oxide synthase expression and activity in rat cardiomyocytes.

Potential ortho- and pathophysiological roles for nitric oxide synthases (NOS) in cardiac functions have been and are continuing to be described. However, cellular signaling mechanisms controlling nitric oxide (NO) production in the heart remain obscure. The aim of this study was to investigate signaling mechanisms involved in regulation of NOS expression and NO generation in cardiomyocytes. Using immunocytochemical methods in conjunction with western blotting, we have found that cultured neonatal rat cardiomyocytes express constitutively all three NOS isoforms targeted predominantly to the particulate component of cardiomyocytes - mitochondria and along contractile fibers, as well as along plasma membrane including T-tubules. Biochemical assay of NO generation has shown that exposure of cultured neonatal rat cardiac cells to isoproterenol (beta-adrenergic stimulation), iloprost [stable prostaglandin I(2) (PGI(2)) analogue], as well as inflammatory cytokines and dibutyryl adenosine-3',5'-monophosphate (db-cAMP), resulted in a marked up-regulation of NOS expression by cardiomyocytes. In db-cAMP-stimulated cells, inhibition of protein kinase A (PKA) and protein kinase C (PKC) reduced immunolabeling of NOS and concomitantly lowered NO production. Taken together, these data point to an involvement of beta-adrenergic mechanisms, cytokine and PGI(2) receptors, adenylyl cyclase, PKA, and PKC in the control of NO generation and expression of NOS in rat cardiomyocytes.

Animals↗

No association of G-463A myeloperoxidase gene polymorphism with MPO-ANCA-associated vasculitis.

BACKGROUND: The activation of neutrophils and monocytes by ANCA, resulting in the release of reactive oxygen species and proteases like myeloperoxidase (MPO), is essential to the pathogenesis of ANCA-associated vasculitis. As the A allele of the G-463A MPO gene polymorphism is associated with diminished activity of MPO, it is conceivable that the presence of this allele protects against MPO-ANCA-associated vasculitis. METHODS: Allelic frequencies of the G-463A polymorphism were studied in 119 ANCA-associated vasculitis patients, 48 with MPO-ANCA and 71 with proteinase 3 (PR3)-ANCA. RESULTS: Allelic frequencies of MPO G-463A promoter polymorphism did not differ between MPO-ANCA- and PR3-ANCA-associated vasculitis patients. Moreover, allelic distribution was similar to that of the normal population. CONCLUSIONS: The data suggest that G-463A polymorphism does not seem to contribute to either MPO-ANCA- or PR3-ANCA-associated vasculitis formation.

Adult↗

Tubular chimerism occurs regularly in renal allografts and is not correlated to outcome.

Recent studies have demonstrated an integration of recipient-derived progenitor cells into solid allografts with differentiation into parenchymal cells. Whether or to what extent this phenomenon influences allograft outcome has still to be elucidated. To detect epithelial chimerism tubular cells were harvested from sequential renal allograft biopsy samples by laser microdissection in 36 patients. Recipient-derived cells were detected by short-tandem repeat-based genotyping. In cases with gender-mismatched transplantation, chimerism was semiquantitatively evaluated by in situ hybridization for the Y-chromosome. Findings were correlated to different pathomechanisms of epithelial injury as well as to morphologic and clinical outcome. Epithelial chimerism was detectable as early as 8 d after transplantation and lasted for 8 yr. A total of 88% of the patients showed an epithelial chimerism; 72% had a stable chimerism in sequential biopsy samples. Evaluation of Y-chromosome by in situ hybridization revealed low percentages of chimerical tubular epithelial cells (2.4% to 6.6%). No correlation to morphology was found. Chimerism was detectable in inconspicuous protocol biopsy samples, cases of drug toxicity, and rejected allografts with and without chronic changes. No correlation was found to allograft function. Epithelial microchimerism is an early and persistent phenomenon after renal transplantation. There is no correlation to morphologic or functional outcome. Probably recipient-derived stem cells contribute in a minor fashion to tissue homeostasis, and cell turnover in renal allografts is predominantly enabled by donor cell renewal.

Biopsy↗

FTY720-induced lymphocyte homing modulates post-transplant preservation/reperfusion injury.

BACKGROUND: A novel immunomodulator, FTY720, modulates lymphocyte migration to injured tissues via enhanced lymphocyte sequestration to secondary lymphoid organs. We tested whether or not single-dose FTY720 (0.5 mg/kg) pretreatment rescues renal grafts from post-transplant preservation/reperfusion injury. METHODS: Rat renal grafts were cold-preserved in University of Wisconsin (UW) solution for 4 hours and then transplanted into syngeneic or allogeneic recipients that received a single dose of FTY720 24 hours before transplantation. Flow cytometry analysis of peripheral blood and lymph nodes was performed to confirm the biologic effect of FTY720. Grafts were harvested after 24 hours. Renal sections were examined histologically and stained for intracellular adhesion molecule-1 (ICAM-1), vascular cellular adhesion molecule-1 (VCAM-1), platelet endothelial cellular adhesion molecule-1 (PECAM-1), major histocompatibility complex (MHC) class II, and inflammatory cells. Interleukin-1 (IL-1) production was determined in renal protein extracts. RESULTS: FTY720 pretreatment significantly increased CD3+ T-cell sequestration to lymph nodes in the face of peripheral lymphopenia. Isografts and allografts from the FTY720-treated groups did not develop increased creatinine (0.55 +/- 0.12 in isografts and 0.62 +/- 0.08 mg/dL in allografts), compared with vehicle controls (2.28 +/- 0.20 in isografts and 2.24 +/- 0.18 mg/dL in allografts). Kidneys from FTY720-treated groups also showed lower acute tubular damage scores. Furthermore, FTY720 decreased neutrophil influx, although circulating neutrophils were unchanged. FTY720 also prevented postischemic IL-1 intragraft production not affecting infiltration with recipient ED-1+ macrophages and MHC class II-positive cells. Expression of ICAM-1, VCAM-1, and PECAM did not differ among groups. CONCLUSION: FTY720 ameliorated morphologic and functional consequences of post-transplant reperfusion injury. Thus, FTY720-induced peripheral T-cell absence may influence intragraft IL-1 production and neutrophil infiltration, despite proadhesive endothelial properties. FTY720 may broaden the utility in renal transplantation as a pretreatment strategy against preservation/reperfusion injury.

Animals↗

Proteomic patterns established with capillary electrophoresis and mass spectrometry for diagnostic purposes.

BACKGROUND: Proteomics applied in large scale may provide a useful diagnostic tool. METHODS: We developed an online combination of capillary electrophoresis with mass spectrometry, allowing fast and sensitive evaluation of polypeptides found in body fluids. Utilizing this technology, polypeptide patterns from urine are established within 45 minutes. About 900 to 2500 polypeptides as well as their concentrations are detected in individual urine samples without the need for specific reagents such as antibodies. To test this method for clinical application, we examined spot urine samples from 57 healthy individuals, 16 patients with minimal change disease (MCD), 18 patients with membranous glomerulonephritis (MGN), and 10 patients with focal segmental glomerulosclerosis (FSGS). RESULTS: One-hundred seventy-three polypeptides were present in more than 90% of the urine samples obtained from healthy individuals, while 690 polypeptides were present with more than 50% probability. These data permitted the establishment of a "normal" polypeptide pattern in healthy individuals. Polypeptides found in the urine of patients differed significantly from the normal controls. These differences allowed the distinction of specific protein spectra in patients with different primary renal diseases. Abnormal pattern of proteins were found even in urine from patients in clinical remission. CONCLUSION: The data indicate that capillary electrophoresis with mass spectrometry coupling provides a promising tool that permits fast and accurate identification and differentiation of protein patterns in body fluids of healthy and diseased individuals, thus enabling diagnosis based on these patterns.

Adolescent↗

Uremia causes endothelial progenitor cell deficiency.

BACKGROUND: Circulating bone marrow-derived endothelial progenitor cells (EPCs) promote vascular repair. Their number in peripheral blood correlates with endothelial function and cardiovascular risk in humans. We explored whether uremia influences the number of EPCs. METHODS: We assessed circulating CD34+ hematopoietic progenitor cells in whole blood using flow cytometry and EPCs (in vitro assay) in 46 patients with advanced renal failure and in 46 age- and gender-matched healthy subjects. Further, the effect of uremia on EPC differentiation was studied in vitro and in vivo. RESULTS: Both in renal patients (r= 0.34, P < 0.02) and in healthy subjects (r= 0.32, P= 0.04) the number of EPCs was significantly correlated to the absolute number of CD34+ hematopoietic progenitor cells. Renal patients had significantly fewer EPCs than healthy subjects, however (167 +/- 15 cells/high power field vs. 235 +/- 17 cells/high power field; P < 0.05). Uremic serum significantly (P < 0.05) inhibited EPC differentiation and functional activity in vitro. Amelioration of uremia after institution of renal replacement therapy in patients with terminal renal failure also significantly (P < 0.05) increased the number of EPCs. CONCLUSION: Uremia inhibits differentiation of EPCs. This may impair cardiovascular repair mechanisms in patients with renal failure.

Cell Count↗

Long-term effects of acute ischemia and reperfusion injury.

Ischemia reperfusion (I/R) injury plays a major role in delayed graft function and long-term changes after kidney transplantation. By using different therapeutic strategies to prevent I/R injury in rat models of kidney transplantation we studied relationships between inflammatory cell arrival and adhesion molecule expression. In other rat models for acute renal failure we investigated the effect of up-regulation of protective genes such as heme oxygenase-1 (HO-1) on infiltrating cells, showing that infiltrating cells also contribute to beneficial effects. In order to gain more insight into the complex mechanisms of long-term changes after kidney transplantation, we started a protocol biopsy program to study histologic changes 6, 12, and 26 weeks after transplantation. The following article clarifies some of the complex mechanisms contributing to long-term changes caused by I/R injury.

Animals↗

Attenuation of extracellular matrix accumulation in diabetic nephropathy by the advanced glycation end product cross-link breaker ALT-711 via a protein kinase C-alpha-dependent pathway.

This study investigated the role of advanced glycation end products (AGEs) in mediating protein kinase C (PKC) isoform expression in diabetic nephropathy. In vitro, vascular smooth muscle cells incubated in a high-glucose (25-mmol/l) medium demonstrated translocation and increased expression of PKC-alpha as compared with those from a low-glucose (5-mmol/l) environment. Coincubation with the cross-link breaker ALT-711 and, to a lesser extent, with aminoguanidine, an inhibitor of AGE formation, attenuated the increased expression and translocation of PKC-alpha. Streptozotocin-induced diabetic rats were randomized to no treatment, treatment with ALT-711, or treatment with aminoguanidine. Diabetes induced increases in PKC-alpha as well as in the -betaI, -betaII, and -epsilon isoforms. Treatment with ALT-711 and aminoguanidine, which both attenuate renal AGE accumulation, abrogated these increases in PKC expression. However, translocation of phosphorylated PKC-alpha from the cytoplasm to the membrane was reduced only by ALT-711. ALT-711 treatment attenuated expression of vascular endothelial growth factor and the extracellular matrix proteins, fibronectin and laminin, in association with reduced albuminuria. Aminoguanidine had no effect on VEGF expression, although some reduction of fibronectin and laminin was observed. These findings implicate AGEs as important stimuli for the activation of PKC, particularly PKC-alpha, in the diabetic kidney, which can be directly inhibited by ALT-711.

Animals↗

Diminished loss of proteoglycans and lack of albuminuria in protein kinase C-alpha-deficient diabetic mice.

Activation of protein kinase C (PKC) isoforms has been implicated in the pathogenesis of diabetic nephropathy. We showed earlier that PKC-alpha is activated in the kidneys of hyperglycemic animals. We now used PKC-alpha(-/-) mice to test the hypothesis that this PKC isoform mediates streptozotocin-induced diabetic nephropathy. We observed that renal and glomerular hypertrophy was similar in diabetic wild-type and PKC-alpha(-/-) mice. However, the development of albuminuria was almost absent in the diabetic PKC-alpha(-/-) mice. The hyperglycemia-induced downregulation of the negatively charged basement membrane heparan sulfate proteoglycan perlecan was completely prevented in the PKC-alpha(-/-) mice, compared with controls. We then asked whether transforming growth factor-beta1 (TGF-beta1) and/or vascular endothelial growth factor (VEGF) is implicated in the PKC-alpha-mediated changes in the basement membrane. The hyperglycemia-induced expression of VEGF165 and its receptor VEGF receptor II (flk-1) was ameliorated in PKC-alpha(-/-) mice, whereas expression of TGF-beta1 was not affected by the lack of PKC-alpha. Our findings indicate that two important features of diabetic nephropathy-glomerular hypertrophy and albuminuria-are differentially regulated. The glucose-induced albuminuria seems to be mediated by PKC-alpha via downregulation of proteoglycans in the basement membrane and regulation of VEGF expression. Therefore, PKC-alpha is a possible therapeutic target for the prevention of diabetic albuminuria.

Albuminuria↗

Cardiovascular effects of systemic nitric oxide synthase inhibition with asymmetrical dimethylarginine in humans.

BACKGROUND: Increased blood concentrations of the endogenous nitric oxide synthase (NOS) inhibitor asymmetrical dimethylarginine (ADMA) have been linked to excess cardiovascular morbidity and mortality and to progression of renal disease. We evaluated systemic cardiovascular effects of ADMA infusion in healthy subjects using invasive techniques, ie, right heart catheter and inulin/para-aminohippurate clearance. METHODS AND RESULTS: Plasma ADMA concentrations encountered in patients with cardiovascular diseases, ie, between 2 and 10 micromol/L, caused a significant (P<0.05) decrease in concentrations of plasma cGMP, the main second messenger of NO. In addition, cardiac output was significantly lower (5.3+/-0.4 versus 5.8+/-0.6 L/min; P<0.05 versus baseline), and systemic vascular resistance was significantly higher (1403+/-123 versus 1221+/-100 dyn x s x cm(-5); P<0.05 versus baseline). The infusion of 0.25 mg ADMA x kg(-1) x min(-1) or 3 microg N(G)-nitro-L-arginine methyl ester x kg(-1) x min(-1), a potent synthetic NOS inhibitor with long action, resulted in a comparable decrease in effective renal plasma flow (from 670+/-40 to 596+/-29 mL x min(-1); P<0.05) and an increase in renovascular resistance (from 79+/-5 to 90+/-7 mm Hg x mL(-1) x min(-1); P<0.05). Moreover, administration of ADMA caused significant sodium retention and blood pressure increase (both P<0.05). The observed effects of ADMA in the systemic circulation were sustained corresponding to a mean plasma half-life of 23.5+/-6.8 minutes, calculated from plasma ADMA decay curves in healthy subjects. CONCLUSIONS: Systemic ADMA infusion is responsible for a short-term, modest decrease in cardiac output with comparable decrease in effective renal plasma flow while increasing systemic vascular resistance and blood pressure in a dose-related manner.

Arginine↗

Improvement of Erdheim-Chester disease in two patients by sequential treatment with vinblastine and mycophenolate mofetil.

Erdheim-Chester disease (ECD) is a rare non-Langerhans' form of histiocytosis with a plethora of different clinical manifestations owing to multiple organ involvement. We report two patients who presented initially with different clinical symptoms. The presenting complaint of the first patient was bone pain, predominantly in the legs, whereas in the other patient the initial symptoms were related to obstruction of both ureters, as in idiopathic retroperitoneal fibrosis. Ultimately, ECD was diagnosed in both patients by the occurrence of both pathognomonic manifestations, the histologic presence of non-Langerhans' histiocytes in bone biopsies, and osteosclerotic lesions of the long bones. Because the extraosseous manifestations progressed and a single application of corticosteroids was ineffective, sequential treatment with vinblastine and mycophenolate mofetil, together with prednisolone, was started. At follow-up respectively 15 and 16 months after the start of treatment a beneficial effect was noted in both patients. These cases illustrate the clinical spectrum of ECD, detail the pathognomonic manifestations of this rare disease, emphasize the need to consider ECD as an uncommon but important differential diagnosis in patients with arthralgias or systemic fibrosis, and give the first evidence for a new treatment option.

Antineoplastic Agents, Phytogenic↗

Erythropoietin regulates endothelial progenitor cells.

Circulating bone marrow-derived endothelial progenitor cells (EPCs) promote vascular reparative processes and neoangiogenesis, and their number in peripheral blood correlates with endothelial function and cardiovascular risk. We tested the hypothesis that the cytokine erythropoietin (EPO) stimulates EPCs in humans. We studied 11 patients with renal anemia and 4 healthy subjects who received standard doses of recombinant human EPO (rhEPO). Treatment with rhEPO caused a significant mobilization of CD34(+)/CD45(+) circulating progenitor cells in peripheral blood (measured by flow cytometry), and increased the number of functionally active EPCs (measured by in vitro assay) in patients (week 2, 312% +/- 31%; week 8, 308% +/- 40%; both P <.01 versus baseline) as well as in healthy subjects (week 8, 194% +/- 15%; P <.05 versus baseline). The effect on EPCs was already observed with an rhEPO dose of about 30 IU/kg per week. Administration of rhEPO increased the number of functionally active EPCs by differentiation in vitro in a dose-dependent manner, assessed in cell culture and by tube formation assay. Furthermore, rhEPO activates the Akt protein kinase pathway in EPCs. Erythropoietin increases the number of functionally active EPCs in humans. Administration of rhEPO or EPO analogs may open new therapeutic strategies in regenerative cardiovascular medicine.

Anemia↗